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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Observation of Scintillation Enhancements and Large‐Scale Structures Within the Equatorial Ionization Anomaly During a Sudden Stratospheric Warming Event
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Observation of Scintillation Enhancements and Large‐Scale Structures Within the Equatorial Ionization Anomaly During a Sudden Stratospheric Warming Event

机译:Observation of Scintillation Enhancements and Large‐Scale Structures Within the Equatorial Ionization Anomaly During a Sudden Stratospheric Warming Event

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Abstract Total electron content (TEC) and L‐band scintillations measured by several networks of GPS and GNSS receivers that operate in South and Central America and the Caribbean region are used to observe the morphology of the equatorial ionization anomaly (EIA), examine the evolution of plasma bubbles, and investigate the enhancement of L‐band scintillations that occurred on February 12 and 13, 2016. A few weak and short magnetic storms developed these days, and a minor sudden stratospheric warming (SSW) event was initiated a few days before. During these unusual conditions, TEC maps reported a split of the otherwise continuous crests of the EIA and the formation of a large‐scale (thousands of kilometers) almost‐circular structure. The western part of the southern crest faded, and a north‐south aligned segment developed near the center of the South American continent, joining the north and south crests of the EIA, forming an anomaly that resembled a closed loop on the eastern side of the continent. Concurrently with the anomaly events, several GPS stations reported increases in the L‐band scintillation index from 0.4 to values greater than 1. We analyzed TEC values from receivers between ±6° from the magnetic equator to identify and follow TEC depletions associated with plasma bubbles when they reach different stations. Although the magnetic activity was moderate (Kp = 3°), we believe that the anomaly redistribution and the scintillation enhancements are not related to a prompt penetration electric field but to enhancing the semidiurnal lunar tide propitiated by the onset of the minor SSW event. We found that depending on the lunar tide phase cycle, the neutral wind's meridional component can augment sub‐km scale irregularities and enhance L‐band scintillations through the wind gradient instability when U·∇ $nabla $n < 0 or the action of wind gradients (∇ $nabla $U) within the bubbles. Our observations imply that the SSW event enables prominent changes in the thermosphere wind system at F‐region altitudes.
机译:抽象总电子含量(TEC)和L的乐队闪烁的几个网络GPS和GNSS接收器在南亚和运作中美洲和加勒比海地区观察赤道的形态电离异常(EIA),检查进化等离子体的泡沫,和调查增强地理L带闪烁发生在2016年2月12日和13日,。和短磁性风暴发展这些天,和一个小突然平流层变暖(量)活动开始前几天。这些不寻常的条件,TEC地图了否则连续波峰的分裂EIA和一个大型规模的形成(数以千计公里)几乎非圆形结构。南部的西部嵴消失,北还是南对齐段附近的发达南美大陆的中心,加入EIA的南北波峰,形成一个异常,就像一个封闭的循环东部的大陆。异常事件,几个GPS电台报道增加L带闪烁指数0.4的值大于1。从接收器±6°之间的值磁赤道识别并遵循侦探当出现创与等离子体泡沫他们到达不同的车站。磁场活动是温和(Kp = 3°),我们相信异常再分配和闪烁的增强并不相关提示电场而是渗透提高半日月球潮汐抚慰出现的小f事件。根据月球潮汐周期阶段,中性风的子午组件可以增加辅助公里规模违规行为,提高L波段通过风梯度闪烁不稳定当U·∇微分算符n < 0美元或行动风梯度(∇微分算符U)美元内泡沫。事件使突出的变化热电离层风系统在F检测区域海拔。

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